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(11) | EP 1 035 626 A2 |
(12) | EUROPEAN PATENT APPLICATION |
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(54) | Power system control apparatus and relative method |
(57) A desired value of a reactive power flow (Q*Mji) between a to-be-controlled power
system and an adjoining power system is determined according to measured values of
the reactive power flow (Qji) and an effective power flow (Pji) and desired voltage
values of the to-be-controlled power system (Vio) and the adjoining power system (Vjo).
Thereafter, a required value of a reactive power (QARi) of the to-be-controlled power
system is calculated according to the desired value (Q*Mji) of the reactive power
flow, the measured values of the reactive power flow and the effective power flow,
and the desired voltage value (Vio) and a measured voltage value in the to-be-controlled
power system (Vi). Thereafter, a control apparatus (14) having an electric capacity
near to the required value of the reactive power is selected from a plurality of control
apparatuses arranged in the to-be-controlled power system to make the selected control
apparatus adjust a voltage of the to-be-controlled power system. Therefore, a cooperation
of the to-be-controlled power system with the adjoining power system can be performed
by collecting locally-existing-information, and a voltage fluctuation and/or a reactive
power fluctuation in the to-be-controlled power system can be immediately suppressed. |
BACKGROUND OF THE INVENTION
Field of the Invention
Description of Related Art
SUMMARY OF THE INVENTION
power flow measuring means for measuring a value of a reactive power flow and a value of an effective power flow, which respectively flow between a to-be-controlled power system and an adjoining power system adjacent to the to-be-controlled power system, for each of one or a plurality of adjoining power systems;
desired value determining means for determining a desired value of the reactive power flow or a desired summed value of the reactive power flows according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, a desired voltage value of the to-be-controlled power system and one or a plurality of desired voltage values of the adjoining power systems;
required value calculating means for calculating a required value of a reactive power of the to-be-controlled power system according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, the desired value of the reactive power flow or the desired summed value of the reactive power flows determined by the desired value determining means, the desired voltage value of the to-be-controlled power system and a measured voltage value of the to-be-controlled power system; and
control means for selecting a control apparatus from a plurality of control apparatuses arranged in the to-be-controlled power system according to the required value of the reactive power calculated by the required value calculating means and controlling an operation of the selected control apparatus to make the selected control apparatus reduce the required value of the reactive power of the to-be-controlled power system.
constant value changing means for changing a value of the control constant or the desired voltage value of the to-be-controlled power system in cases where a system configuration of the to-be-controlled power system and the adjoining power systems is changed.
constant value changing means for changing a value of the control constant in cases where the desired voltage value of the to-be-controlled power system or the desired voltage value of one adjoining power system is changed.
power flow measuring means for measuring a value of a reactive power flow and a value of an effective power flow flowing between each of partial power systems composing a to-be-controlled power system and an adjoining power system adjacent to the partial power system and measuring a value of a reactive power flow and a value of an effective power flow flowing between one pair of partial power systems adjacent to each other for each pair of partial power systems adjacent to each other;
desired value determining means for determining a desired value of the reactive power flow flowing between one partial power system and the adjoining power system adjacent to the partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the partial power system and the adjoining power system, obtained by the power flow measuring means, a desired voltage value of the partial power system and a desired voltage value of the adjoining power system for each partial power system and determining a desired value of the reactive power flow flowing between one pair of partial power systems adjacent to each other according to the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the pair of partial power systems, obtained by the power flow measuring means, two desired voltage values of the pair of partial power systems for each pair of partial power systems adjacent to each other;
required value calculating means for calculating a required value of a reactive power of each partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the partial power system and one adjoining power system adjacent to the partial power system, obtained by the power flow measuring means, the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the partial power system and another partial power system adjacent to the partial power system, obtained by the power flow measuring means, the desired value of the reactive power flow, which flow between the partial power system and the adjoining power system, and the desired value of the reactive power flow, which flow between the partial power system and another partial power system adjacent to the partial power system, determined by the desired value determining means, the desired voltage value of the partial power system and a measured voltage value of the partial power system; and
control means for selecting a control apparatus from a plurality of control apparatuses arranged in one partial power system according to the required value of the reactive power of the partial power system calculated by the required value calculating means for each partial power system and controlling an operation of the selected control apparatus of each partial power system to make the selected control apparatus reduce the required value of the reactive power of the partial power system.
constant value changing means for changing a value of the control constant or the desired voltage value of one partial power system in cases where a system configuration of the partial power systems and the adjoining power systems is changed.
constant value changing means for changing a value of the control constant in cases where the desired voltage value of one partial power system or the desired voltage value of one adjoining power system is changed.
system predicting means for receiving a load prediction of a to-be-controlled power system and one or a plurality of adjoining power systems adjacent to the to-be-controlled power system, predicting first electric information of the to-be-controlled power system and second electric information between the to-be-controlled power system and each adjoining power system by calculating a power flow between the to-be-controlled power system and each adjoining power system according to the load prediction;
operation predicting means for predicting an operation of each of one or a plurality of control apparatuses arranged in the to-be-controlled power system according to the first electric information and the second electric information predicted by the system predicting means; and
schedule setting means for setting an operation schedule of the control apparatuses according to the operation prediction obtained by the operation predicting means to adjust the first electric information or the second electric information under control of the control apparatuses operated according to the operation schedule.
power flow measuring means for measuring a value of a reactive power flow and a value of an effective power flow, which respectively flow between the to-be-controlled power system and each adjoining power system adjacent to the to-be-controlled power system;
desired value determining means for determining a desired value of the reactive power flow according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, a desired voltage value of the to-be-controlled power system and one or a plurality of desired voltage values of the adjoining power systems;
required value calculating means for calculating a required value of a reactive power of the to-be-controlled power system according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, the desired value of the reactive power flow determined by the desired value determining means, the desired voltage value of the to-be-controlled power system and a measured voltage value of the to-be-controlled power system;
control means for selecting a control apparatus from the control apparatuses according to the required value of the reactive power calculated by the required value calculating means, determining an operation instruction required for the selected control apparatus according to the required value of the reactive power and providing the operation instruction for the selected control apparatus to make the selected control apparatus reduce the required value of the reactive power of the to-be-controlled power system in an operation of the selected control apparatus indicated by the operation instruction; and
schedule revising means for revising the operation schedule of the control apparatuses set by the schedule setting means to make a revised operation schedule match with the operation of the control apparatus selected by the control means in cases where the control apparatus selected by the control means or the operation of the control apparatus selected by the control means does not match with the operation schedule of the control apparatuses, the control apparatuses being operated according to the revised operation schedule.
electric information predicting means for calculating a predicted value of first electric information corresponding to a to-be-controlled power system from a measured value of the first electric information of the to-be-controlled power system;
communicating means for receiving a predicted value of second electric information and a measured value of the second electric information from each of one or a plurality of adjoining power systems adjacent to the to-be-controlled power system;
operation predicting means for predicting an operation of each of a plurality of first control apparatuses arranged in the to-be-controlled power system from the predicted value of the first electric information and the measured value of the first electric information obtained by the electric information predicting means and predicting an operation of each of a plurality of second control apparatuses arranged in one adjoining power system from the predicted value of the second electric information and the measured value of the second electric information received by the communicating means from the adjoining power system for each adjoining power system;
control means for selecting a particular first control apparatus from the first control apparatuses arranged in the to-be-controlled power system according to the operation prediction for the first control apparatuses and the operation prediction for the second control apparatuses obtained by the operation predicting means and controlling the selected control apparatus to adjust the first electric information of the to-be-controlled power system to the predicted value obtained by the electric information predicting means.
measuring a value of a reactive power flow and a value of an effective power flow, which respectively flow between a to-be-controlled power system and an adjoining power system adjacent to the to-be-controlled power system;
determining a desired value of the reactive power flow according to the measured value of the reactive power flow and the measured value of the effective power flow, a desired voltage value of the to-be-controlled power system and a desired voltage value of the adjoining power system;
calculating a required value of a reactive power of the to-be-controlled power system according to the measured value of the reactive power flow, the measured value of the effective power flow, the desired value of the reactive power flow, the desired voltage value of the to-be-controlled power system and a measured voltage value of the to-be-controlled power system;
selecting a control apparatus from a plurality of control apparatuses arranged in the to-be-controlled power system according to the required value of the reactive power; and
controlling an operation of the selected control apparatus to make the selected control apparatus reduce the required value of the reactive power of the to-be-controlled power system.
measuring a value of a reactive power flow and a value of an effective power flow flowing between each of partial power systems composing a to-be-controlled power system and an adjoining power system adjacent to the partial power system;
measuring a value of a reactive power flow and a value of an effective power flow flowing between one pair of partial power systems adjacent to each other for each pair of partial power systems adjacent to each other;
determining a desired value of the reactive power flow flowing between one partial power system and the adjoining power system adjacent to the partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow flowing between the partial power system and the adjoining power system, a desired voltage value of the partial power system and a desired voltage value of the adjoining power system for each partial power system;
determining a desired value of the reactive power flow flowing between one pair of partial power systems adjacent to each other according to the measured value of the reactive power flow and the measured value of the effective power flow flowing between the pair of partial power systems, and two desired voltage values of the pair of partial power systems for each pair of partial power systems adjacent to each other;
calculating a required value of a reactive power of each partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow flowing between the partial power system and one adjoining power system adjacent to the partial power system, the measured value of the reactive power flow and the measured value of the effective power flow flowing between the partial power system and another partial power system adjacent to the partial power system, the desired value of the reactive power flow flowing between the partial power system and the adjoining power system, the desired value of the reactive power flow flowing between the partial power system and another partial power system adjacent to the partial power system, the desired voltage value of the partial power system and a measured voltage value of the partial power system;
selecting a control apparatus from a plurality of control apparatuses arranged in one partial power system according to the required value of the reactive power of the partial power system for each partial power system; and
controlling an operation of the selected control apparatus of each partial power system to make the selected control apparatus reduce the required value of the reactive power of the partial power system.
receiving a load prediction of a to-be-controlled power system and one or a plurality of adjoining power systems adjacent to the to-be-controlled power system;
predicting first electric information of the to-be-controlled power system and second electric information between the to-be-controlled power system and each adjoining power system by calculating a power flow between the to-be-controlled power system and each adjoining power system according to the load prediction;
predicting an operation of each of one or a plurality of control apparatuses arranged in the to-be-controlled power system according to the first electric information and the second electric information; and
setting an operation schedule of the control apparatuses according to the operation prediction to operate the control apparatuses according to the operation schedule.
calculating a predicted value of first electric information corresponding to a to-be-controlled power system from a measured value of the first electric information of the to-be-controlled power system;
receiving a predicted value of second electric information and a measured value of the second electric information from each of one or a plurality of adjoining power systems adjacent to the to-be-controlled power system;
predicting an operation of each of a plurality of first control apparatuses arranged in the to-be-controlled power system from the predicted value of the first electric information and the measured value of the first electric information;
predicting an operation of each of a plurality of second control apparatuses arranged in one adjoining power system from the predicted value of the second electric information and the measured value of the second electric information received from the adjoining power system for each adjoining power system;
selecting a particular first control apparatus from the first control apparatuses arranged in the to-be-controlled power system according to the operation prediction for the first control apparatuses and the operation prediction for the second control apparatuses; and
controlling the selected control apparatus to adjust the first electric information of the to-be-controlled power system to the predicted value.
BRIEF DESCRIPTION OF THE DRAWINGS
Fig. 1 is a block diagram of a power system control apparatus according to a first embodiment of the present invention;
Fig. 2 is a diagram showing a power system to be controlled by the power system control apparatus shown in Fig. 1 and an adjoining power system adjacent to the power system to be controlled;
Fig. 3 is a flow chart showing a power system control method applied for the power system control apparatus shown in Fig. 1;
Fig. 4 is a block diagram of a power system control apparatus according to a modification of the first embodiment;
Fig. 5 is a diagram showing a power system to be controlled by the power system control apparatus shown in Fig. 4 and two adjoining power systems adjacent to the power system to be controlled;
Fig. 6 is a diagram showing a power system to be controlled and two adjoining power systems adjacent to the power system to be controlled according to another modification of the first embodiment;
Fig. 7 is a diagram showing a power system to be controlled according to another modification of the first embodiment;
Fig. 8 is a diagram showing a power system to be controlled according to another modification of the first embodiment;
Fig. 9 is a diagram showing a power system to be controlled and a plurality of adjoining power systems adjacent to the power system to be controlled according to another modification of the first embodiment;
Fig. 10 is a diagram showing a power system to be controlled and a plurality of adjoining power systems adjacent to the power system to be controlled according to another modification of the first embodiment;
Fig. 11 is a block diagram of a power system control apparatus according to a second embodiment of the present invention;
Fig. 12 is a diagram showing two partial power systems composing a power system to be controlled by the power system control apparatus shown in Fig. 11 and two adjoining power systems adjacent to the power system to be controlled;
Fig. 13 is a flow chart showing a power system control method applied for the power system control apparatus shown in Fig. 11;
Fig. 14 is a block diagram showing three partial power systems composing a power system to be controlled according to a modification of the second embodiment;
Fig. 15 is a block diagram showing a plurality of partial power systems composing a power system to be controlled according to another modification of the second embodiment;
Fig. 16 is a block diagram of a power system control apparatus according to a third embodiment of the present invention;
Fig. 17 is a block diagram of a power system control apparatus according to a fourth embodiment of the present invention;
Fig. 18 is a block diagram of a power system control apparatus according to a fifth embodiment of the present invention;
Fig. 19 is a block diagram of a power system control apparatus according to a sixth embodiment of the present invention;
Fig. 20 is a block diagram of a power system control apparatus arranged for each power system according to a seventh embodiment of the present invention;
Fig. 21 is a flow chart showing a power system control method applied for each power system control apparatus according to the seventh embodiment;
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
a power flow measuring unit 11, functioning as a power flow measuring means, for measuring the effective power flow Pji and the reactive power flow Qji, which flow from the adjoining power system 2 into the to-be-controlled power system 1, at the voltage monitoring bus 5;
a desired reactive power value determining unit 12, functioning as a desired value determining means, for determining a value Q*Mji of the reactive power flow desired at the boundary point 4 of the interconnection line 3 according to the desired voltage values Vi0 and Vj0 of the buses 5 and 6 and the effective power flow Pji and the reactive power flow Qji flowing into the bus 5 of the to-be-controlled power system 1;
a reactive power required value calculating unit 13, functioning as a required value calculating means, for calculating a required value QARi of a reactive power in the to-be-controlled power system 1 according to the desired value Q*Mji of the reactive power flow determined in the desired reactive power value determining unit 12, the effective power flow Pji and the reactive power flow Qji measured in the power flow measuring unit 11, the measured voltage value Vi of the bus 5 of the to-be-controlled power system 1 and the desired voltage value Vi0 of the bus 5 of the to-be-controlled power system 1, the reactive power required value QARi denoting a surplus/shortage reactive power in the to-be-controlled power system 1; and
a control apparatus controlling unit 14, functioning as a control means, for selecting one or more control apparatuses to be controlled from all voltage/reactive power control apparatuses existing in the to-be-controlled power system 1 and controlling the selected control apparatuses to adjust a voltage value at the bus 5 for the purpose of reducing the reactive power required value QARi calculated in the reactive power required value calculating unit 13 to a zero value.
the plurality of power flow measuring units 11, respectively corresponding to one interconnection line 3, for measuring effective power flows and reactive power flows (represented by an effective power flow Pki and a reactive power flow Qki flowing from the adjoining power systems 2a into the to-be-controlled power system 1 and an effective power flow Pji and a reactive power flow Qji flowing from the adjoining power systems 2b into the to-be-controlled power system 1), which flow from the adjoining power systems 2 into the to-be-controlled power system 1, at the voltage monitoring bus 5;
the desired reactive power value determining unit 12 for determining a summed value Q*Mni of the reactive power flows desired at the boundary points 4 of the interconnection lines 3 according to the desired voltage value Vi0 of the bus 5, the desired voltage values (represented by Vj0 and Vk0) of the buses 6 and measured values (represented by Pji and Pki) of the effective power flows and measured values (represented by Qji and Qki) of the reactive power flows flowing into the bus 5 of the to-be-controlled power system 1;
the reactive power required value calculating unit 13 for calculating a reactive power
required value QARi of the to-be-controlled power system 1 according to the desired value Q*Mni of the reactive power flows determined in the desired reactive power value determining
unit 12, the effective power flows and the reactive power flows measured in the power
flow measuring unit 11, the measured voltage value Vi of the bus 5 of the to-be-controlled power system 1 and the desired voltage value
Vi0 of the bus 5 of the to-be-controlled power system 1; and
the control apparatus controlling unit 14.
EMBODIMENT 2
a first power flow measuring unit 11a, functioning as a flow measuring means, for measuring an effective power flow Pki and a reactive power flow Qki, which flow from the adjoining power system 2a into the first partial power system 1a, at the bus 5a of the first partial power system 1a;
a second power flow measuring unit 11b, functioning as the flow measuring means, for measuring an effective power flow Pji and a reactive power flow Qji, which flow from the adjoining power system 2b into the second partial power system 1b, at the bus 5b of the second partial power system 1b;
a first inter-partial system power flow measuring unit 21a, functioning as the flow measuring means, for measuring an effective power flow Pi21 and the reactive power flow Qi21, which flow from the second partial power system 1b into the first partial power system 1a, at the bus 5a;
a second inter-partial system power flow measuring unit 21b, functioning as the flow measuring means, for measuring an effective power flow Pi12 and a reactive power flow Qi12, which flow from the first partial power system 1a into the second partial power system 1b, at the bus 5b;
a desired reactive power value determining unit 22, functioning as a desired value determining means, for determining a value Q*Mki of the reactive power flow desired at a boundary point 4a of the interconnection line 3a according to the desired voltage values Vk0 and Vi10 of the buses 6a and 5a and the effective power flow Pki and the reactive power flow Qki measured in the first power flow measuring unit 11a, determining a value Q*Mji of the reactive power flow desired at a boundary point 4b of the interconnection line 3b according to the desired voltage values Vj0 and Vi20 of the buses 6b and 5b and the effective power flow Pji and the reactive power flow Qji measured in the second power flow measuring unit 11b, and determining a value Q*Mi of the reactive power flow desired at a boundary point 4c of the interconnection line 3c according to the desired voltage values Vi10 and Vi20 of the buses 5a and 5b and the effective power flow Pi21 (or Pi12) and the reactive power flow Qi21 (or Qi12) measured in the first inter-partial system power flow measuring unit 21a (or the second inter-partial system power flow measuring unit 21b);
a reactive power required value calculating unit 23, functioning as a required value calculating means, for calculating a reactive power required value QARi1 of the first partial power system 1a and a reactive power required value QARi2 of the second partial power system 1b according to the desired values Q*Mki, Q*Mji and Q*Mi of the reactive power flows determined in the desired reactive power value determining unit 22, the effective power flows Pki, Pji, Pi21 and Pi12 and the reactive power flows Qki, Qji, Qi21 and Qi12 measured in the power flow measuring units 11a and 11b and the inter-partial system power flow measuring units 21a and 21b, the measured voltage values Vi1 and Vi2 of the buses 5a and 5b of the partial power systems 1a and 1b and the desired voltage values Vk0, Vj0 ,Vi10 and Vi20 of the buses 6a, 6b, 5a and 5b of the power systems 2a, 2b, 1a and 1b; and
a control apparatus controlling unit 24, functioning as a control means, for selecting one or more control apparatuses to be controlled from all voltage/reactive power control apparatuses existing in the first partial power system 1a according to the reactive power required value QARi1 of the first partial power system 1a calculated in the reactive power required value calculating unit 23, selecting one or more control apparatuses to be controlled from all voltage/reactive power control apparatuses existing in the second partial power system 1b according to the reactive power required value QARi2 of the second partial power system 1b calculated in the reactive power required value calculating unit 23, controlling the selected control apparatuses of the first partial power system 1a to adjust values QMki and QMi of reactive power flows, which flows from the adjoining power system 2a and the second partial power system 1b to the first partial power system 1a, at the boundary points 4a and 4c to the desired values Q*Mki and Q*Mi of the reactive power flows determined in the desired reactive power value determining unit 22 and to adjust the measured voltage value Vi1 of the bus 5a to the desired voltage value Vi10 according to the reactive power required value QARi1 calculated in the reactive power required value calculating unit 23, and controlling the selected control apparatuses of the second partial power system 1b to adjust values QMji and QMi of reactive power flows, which flows from the adjoining power system 2b and the first partial power system 1a to the second partial power system 1b, at the boundary points 4b and 4c to the desired values Q*Mji and Q*Mi of the reactive power flows determined in the desired reactive power value determining unit 22 and to adjust the measured voltage value Vi2 of the bus 5a to the desired voltage value Vi20 according to the reactive power required value QARi2 calculated in the reactive power required value calculating unit 23.
EMBODIMENT 3
a system configuration supervising unit 31, functioning as a constant value changing means, for supervising a system configuration of power systems currently operated to detect the changing of the system configuration;
a control constant changing unit 32, functioning as the constant value changing means, for changing a value of the control constant K to a new value matching with a new system configuration in cases where it is detected that the system configuration of the power systems supervised in the system configuration supervising unit 31 is changed to the new system configuration;
the reactive power required value calculating unit 13 for calculating a reactive power
required value QARi of the to-be-controlled power system 1 according to the control constant K having
the new value changed in the control constant changing unit 32; and
the control apparatus controlling unit 14.
EMBODIMENT 4
a desired voltage resetting unit 33, functioning as a constant value changing means, for resetting the desired voltage value Vio of the to-be-controlled power system 1 and the desired voltage values Vjo of the adjoining power systems 2 set in advance according to a desired voltage changing signal input by an operator;
a control constant changing unit 34, functioning as the constant value changing means, for changing a value of the control constant K to a new value according to a difference between a group of the desired voltage values Vio and Vjo set in advance and a group of the desired voltage values Vio and Vjo reset in the desired voltage resetting unit 33;
the desired reactive power value determining unit 12 for determining a value Q*Mji of the reactive power flow according to the desired voltage values Vi0 and Vj0 reset in the desired voltage resetting unit 33;
the reactive power required value calculating unit 13 for calculating a reactive power
required value QARi of the to-be-controlled power system 1 according to the control constant K of the
new value changed in the control constant changing unit 34 and the value Q*Mji of the reactive power flow determined in the desired reactive power value determining
unit 12; and
the control apparatus controlling unit 14.
EMBODIMENT 5
a system predicting unit 41, functioning as a system predicting means, for predicting electric information, such as a voltage Vi of the to-be-controlled power system 1 and a power flow of a transmission line in the to-be-controlled power system 1, and electric information, such as a power flow Pji + jQji between the to-be-controlled power system 1 and each of the adjoining power systems 2, by performing a power flow calculation according to a load prediction of the power systems 1 and 2;
an apparatus instruction prediction calculating unit 42, functioning as an operation predicting means and made of the desired reactive power value determining unit 12 and the reactive power required value calculating unit 13, for predicting operations of voltage/reactive power control apparatuses existing in the to-be-controlled power system 1 according to the electric information predicted in the system predicting unit 41 and the desired voltage values Vio and Vjo set in advance; and
a schedule setting unit 43, functioning as a schedule setting means, for setting an operation schedule (for example, an operation time period and an operation degree) of the voltage/reactive power control apparatuses according to the prediction result obtained in the apparatus instruction prediction calculating unit 42.
EMBODIMENT 6
a schedule revising unit 44, functioning as a schedule revising means, for changing the operation schedule set in the schedule setting unit 43 to a revised operation schedule matching with the operation conditions of the selected control apparatuses set in the apparatus controlling unit 14, in cases where the operation schedule set in the apparatus instruction prediction calculating unit 42 does not match with the operation conditions of the selected control apparatuses, and outputting operation instructions indicating operation conditions indicated by the revised operation schedule to the control apparatuses.
EMBODIMENT 7
an electric information measuring and storing unit 53, functioning as an electric information predicting means, for measuring electric information such as a voltage value, an effective power flow and a reactive power flow at a voltage monitoring point of the particular power system and storing the electric information;
a predicted electric information calculating unit 54, functioning as the electric information predicting means, for calculating predicted electric information (for example, a predicted voltage value Vpredict, a predicted effective power flow and a predicted reactive power flow) at the voltage monitoring point of the particular power system according to the measured electric information stored in the electric information measuring and storing unit 53;
an information communicating unit 55, functioning as a communicating means, for receiving and transmitting the electric information of the particular power system measured in the electric information measuring and storing units 53 and the predicted electric information of the particular power system calculated in the predicted electric value calculating units 54 from/to another or other power systems adjacent to the particular power system through a communication line;
a control apparatus operation predicting unit 56, functioning as an operation predicting means, for predicting operation conditions (for example, a control type, an operation time period and an operation degree) required for each of a plurality of control apparatuses of the particular power system according to the predicted electric information of the particular power system calculated in the predicted electric information calculating unit 54 and the measured electric information of the particular power system measured in the electric information measuring and storing unit 53 and predicting operation conditions (for example, a control type, an operation time period and an operation degree) required for each of a plurality of control apparatuses of a power system adjacent to the particular power system according to the predicted electric information and the measured electric information received in the information communicating unit 55 from the power system for each power system adjacent to the particular power system; and
a control apparatus instructing unit 57, functioning as a control means, for estimating a first influence of the operation conditions, which are required for each control apparatus of one power system adjacent to the particular power system and are predicted in the control apparatus operation predicting unit 56, on an electric power (or a voltage) at the monitoring point of the particular power system for each power system adjacent to the particular power system, estimating a second influence of the operation conditions, which are required for each control apparatus of the particular power system and are predicted in the control apparatus operation predicting unit 56, on an electric power (or a voltage) at the monitoring point of one power system adjacent to the particular power system for each power system adjacent to the particular power system, selecting one or more control apparatuses to be controlled from all voltage/reactive power control apparatuses of the particular power system according to the first influence, the second influence and the predicted electric information calculated in the predicted electric information calculating unit 54 of the power system and controlling the selected control apparatuses according to the first influence, the second influence and the predicted electric information to adjust a voltage at the monitoring point of the particular power system for the purpose of suppressing a voltage fluctuation and/or a reactive power fluctuation at the monitoring point of the particular power system.
power flow measuring means (11) for measuring a value of a reactive power flow and a value of an effective power flow, which respectively flow between a to-be-controlled power system and an adjoining power system adjacent to the to-be-controlled power system, for each of one or a plurality of adjoining power systems;
desired value determining means (12) for determining a desired value of the reactive power flow or a desired summed value of the reactive power flows according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, a desired voltage value of the to-be-controlled power system and one or a plurality of desired voltage values of the adjoining power systems;
required value calculating means (13) for calculating a required value of a reactive power of the to-be-controlled power system according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, the desired value of the reactive power flow or the desired summed value of the reactive power flows determined by the desired value determining means, the desired voltage value of the to-be-controlled power system and a measured voltage value of the to-be-controlled power system; and
control means (14) for selecting a control apparatus from a plurality of control apparatuses arranged in the to-be-controlled power system according to the required value of the reactive power calculated by the required value calculating means and controlling an operation of the selected control apparatus to make the selected control apparatus reduce the required value of the reactive power of the to-be-controlled power system.
constant value changing means (32) for changing a value of the control constant or the desired voltage value of the to-be-controlled power system in cases where a system configuration of the to-be-controlled power system and the adjoining power systems is changed.
constant value changing means (34) for changing a value of the control constant in cases where the desired voltage value of the to-be-controlled power system or the desired voltage value of one adjoining power system is changed.
power flow measuring means (11a;11b;21a;21b) for measuring a value of a reactive power flow and a value of an effective power flow flowing between each of partial power systems composing a to-be-controlled power system and an adjoining power system adjacent to the partial power system and measuring a value of a reactive power flow and a value of an effective power flow flowing between one pair of partial power systems adjacent to each other for each pair of partial power systems adjacent to each other;
desired value determining means (22) for determining a desired value of the reactive power flow flowing between one partial power system and the adjoining power system adjacent to the partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the partial power system and the adjoining power system, obtained by the power flow measuring means, a desired voltage value of the partial power system and a desired voltage value of the adjoining power system for each partial power system and determining a desired value of the reactive power flow flowing between one pair of partial power systems adjacent to each other according to the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the pair of partial power systems, obtained by the power flow measuring means and two desired voltage values of the pair of partial power systems for each pair of partial power systems adjacent to each other;
required value calculating means (23) for calculating a required value of a reactive power of each partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the partial power system and one adjoining power system adjacent to the partial power system, obtained by the power flow measuring means, the measured value of the reactive power flow and the measured value of the effective power flow, which flow between the partial power system and another partial power system adjacent to the partial power system, obtained by the power flow measuring means, the desired value of the reactive power flow, which flow between the partial power system and the adjoining power system, and the desired value of the reactive power flow, which flow between the partial power system and another partial power system adjacent to the partial power system, determined by the desired value determining means, the desired voltage value of the partial power system and a measured voltage value of the partial power system; and
control means (24) for selecting a control apparatus from a plurality of control apparatuses arranged in one partial power system according to the required value of the reactive power of the partial power system calculated by the required value calculating means for each partial power system and controlling an operation of the selected control apparatus of each partial power system to make the selected control apparatus reduce the required value of the reactive power of the partial power system.
constant value changing means (32) for changing a value of the control constant or the desired voltage value of one partial power system in cases where a system configuration of the partial power systems and the adjoining power systems is changed.
constant value changing means (34) for changing a value of the control constant in cases where the desired voltage value of one partial power system or the desired voltage value of one adjoining power system is changed.
system predicting means (41) for receiving a load prediction of a to-be-controlled power system and one or a plurality of adjoining power systems adjacent to the to-be-controlled power system, predicting first electric information of the to-be-controlled power system and second electric information between the to-be-controlled power system and each adjoining power system by calculating a power flow between the to-be-controlled power system and each adjoining power system according to the load prediction;
operation predicting means (42) for predicting an operation of each of one or a plurality of control apparatuses arranged in the to-be-controlled power system according to the first electric information and the second electric information predicted by the system predicting means; and
schedule setting means (43) for setting an operation schedule of the control apparatuses according to the operation prediction obtained by the operation predicting means to operate the control apparatuses according to the operation schedule.
power flow measuring means (11) for measuring a value of a reactive power flow and a value of an effective power flow, which respectively flow between the to-be-controlled power system and each adjoining power system adjacent to the to-be-controlled power system;
desired value determining means (12) for determining a desired value of the reactive power flow according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, a desired voltage value of the to-be-controlled power system and one or a plurality of desired voltage values of the adjoining power systems;
required value calculating means (13) for calculating a required value of a reactive power of the to-be-controlled power system according to the measured values of the reactive power flows and the measured values of the effective power flows obtained by the power flow measuring means, the desired value of the reactive power flow determined by the desired value determining means, the desired voltage value of the to-be-controlled power system and a measured voltage value of the to-be-controlled power system;
control means (14) for selecting a control apparatus from the control apparatuses according to the required value of the reactive power calculated by the required value calculating means, determining an operation instruction required for the selected control apparatus according to the required value of the reactive power and providing the operation instruction for the selected control apparatus to make the selected control apparatus reduce the required value of the reactive power of the to-be-controlled power system in an operation of the selected control apparatus indicated by the operation instruction; and
schedule revising means (44) for revising the operation schedule of the control apparatuses set by the schedule setting means to make a revised operation schedule match with the operation of the control apparatus selected by the control means in cases where the control apparatus selected by the control means or the operation of the control apparatus selected by the control means does not match with the operation schedule of the control apparatuses, the control apparatuses being operated according to the revised operation schedule.
electric information predicting means (54) for calculating a predicted value of first electric information corresponding to a to-be-controlled power system from a measured value of the first electric information of the to-be-controlled power system;
communicating means (55) for receiving a predicted value of second electric information and a measured value of the second electric information from each of one or a plurality of adjoining power systems adjacent to the to-be-controlled power system;
operation predicting means (56) for predicting an operation of each of a plurality of first control apparatuses arranged in the to-be-controlled power system from the predicted value of the first electric information and the measured value of the first electric information obtained by the electric information predicting means and predicting an operation of each of a plurality of second control apparatuses arranged in one adjoining power system from the predicted value of the second electric information and the measured value of the second electric information received by the communicating means from the adjoining power system for each adjoining power system;
control means (57) for selecting a particular first control apparatus from the first control apparatuses arranged in the to-be-controlled power system according to the operation prediction for the first control apparatuses and the operation prediction for the second control apparatuses obtained by the operation predicting means and controlling the selected control apparatus to adjust the first electric information of the to-be-controlled power system to the predicted value obtained by the electric information predicting means.
measuring a value of a reactive power flow and a value of an effective power flow, which respectively flow between a to-be-controlled power system and an adjoining power system adjacent to the to-be-controlled power system;
determining a desired value of the reactive power flow according to the measured value of the reactive power flow and the measured value of the effective power flow, a desired voltage value of the to-be-controlled power system and a desired voltage value of the adjoining power system;
calculating a required value of a reactive power of the to-be-controlled power system according to the measured value of the reactive power flow, the measured value of the effective power flow, the desired value of the reactive power flow, the desired voltage value of the to-be-controlled power system and a measured voltage value of the to-be-controlled power system;
selecting a control apparatus from a plurality of control apparatuses arranged in the to-be-controlled power system according to the required value of the reactive power; and
controlling an operation of the selected control apparatus to make the selected control apparatus reduce the required value of the reactive power of the to-be-controlled power system.
measuring a value of a reactive power flow and a value of an effective power flow flowing between each of partial power systems composing a to-be-controlled power system and an adjoining power system adjacent to the partial power system;
measuring a value of a reactive power flow and a value of an effective power flow flowing between one pair of partial power systems adjacent to each other for each pair of partial power systems adjacent to each other;
determining a desired value of the reactive power flow flowing between one partial power system and the adjoining power system adjacent to the partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow flowing between the partial power system and the adjoining power system, a desired voltage value of the partial power system and a desired voltage value of the adjoining power system for each partial power system;
determining a desired value of the reactive power flow flowing between one pair of partial power systems adjacent to each other according to the measured value of the reactive power flow and the measured value of the effective power flow flowing between the pair of partial power systems, and two desired voltage values of the pair of partial power systems for each pair of partial power systems adjacent to each other;
calculating a required value of a reactive power of each partial power system according to the measured value of the reactive power flow and the measured value of the effective power flow flowing between the partial power system and one adjoining power system adjacent to the partial power system, the measured value of the reactive power flow and the measured value of the effective power flow flowing between the partial power system and another partial power system adjacent to the partial power system, the desired value of the reactive power flow flowing between the partial power system and the adjoining power system, the desired value of the reactive power flow flowing between the partial power system and another partial power system adjacent to the partial power system, the desired voltage value of the partial power system and a measured voltage value of the partial power system;
selecting a control apparatus from a plurality of control apparatuses arranged in one partial power system according to the required value of the reactive power of the partial power system for each partial power system; and
controlling an operation of the selected control apparatus of each partial power system to make the selected control apparatus reduce the required value of the reactive power of the partial power system.
receiving a load prediction of a to-be-controlled power system and one or a plurality of adjoining power systems adjacent to the to-be-controlled power system;
predicting first electric information of the to-be-controlled power system by calculating a power flow between the to-be-controlled power system and each adjoining power system according to the load prediction;
predicting second electric information between the to-be-controlled power system and each adjoining power system according to the load prediction;
predicting an operation of each of one or a plurality of control apparatuses arranged in the to-be-controlled power system according to the first electric information and the second electric information; and
setting an operation schedule of the control apparatuses according to the operation prediction to operate the control apparatuses according to the operation schedule.
calculating a predicted value of first electric information corresponding to a to-be-controlled power system from a measured value of the electric information of the to-be-controlled power system;
receiving a predicted value of second electric information and a measured value of the second electric information from each of one or a plurality of adjoining power systems adjacent to the to-be-controlled power system;
predicting an operation of each of a plurality of first control apparatuses arranged in the to-be-controlled power system from the predicted value of the first electric information and the measured value of the first electric information;
predicting an operation of each of a plurality of second control apparatuses arranged in one adjoining power system from the predicted value of the second electric information and the measured value of the second electric information received from the adjoining power system for each adjoining power system;
selecting a particular first control apparatus from the first control apparatuses arranged in the to-be-controlled power system according to the operation prediction for the first control apparatuses and the operation prediction for the second control apparatuses; and
controlling the selected control apparatus to adjust the first electric information of the to-be-controlled power system to the predicted value.